首页> 外文会议>Materials Science amp; Technology 2003 Conference; Nov 9-12, 2003; Chicago, Illinois, USA >Thermal Boundary Conditions For Computer Simulation Of Grey Cast Iron Solidification In Sand Moulds
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Thermal Boundary Conditions For Computer Simulation Of Grey Cast Iron Solidification In Sand Moulds

机译:砂型中灰口铸铁凝固计算机模拟的热边界条件

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By exploiting the results of solidification modelling foundries can enhance the quality and reduce the cost of their casting processes. However not enough information exists on the thermal boundary conditions, which control the transfer of thermal energy stored in liquid metal to the mould via the metal/mould interface during solidification. This is quantified by the heat transfer coefficient (h.t.c.). An experimental and numerical study was carried out to find the magnitude and variation of the h.t.c. in cylindrical castings during the solidification of grey cast iron in green sand moulds. The h.t.c. values were calculated using a time marching solution to the inverse heat conduction problem. The variation of h.t.c. with metallostatic head was analysed. There is a wide scatter in green sand thermal properties due to the large number of variables involved in mould manufacture including green sand compaction and water content. The sensitivity of the calculation to uncertainties in the thermophysical properties of the green sand was evaluated.
机译:通过利用凝固过程的结果,铸造厂可以提高质量并降低其铸造工艺的成本。但是,关于热边界条件的信息不足,在凝固过程中,这些信息无法控制液态金属中存储的热能通过金属/模具界面向模具的转移。这通过传热系数(h.t.c.)来量化。进行了实验和数值研究以发现h.t.c的大小和变化。灰砂铸铁在绿色砂模中凝固的过程中,在圆柱形铸件中产生的腐蚀。 h.t.c.使用逆热传导问题的时间步长解计算值。 h.t.c.的变化分析了具有静触头的头部。由于模具制造中涉及的大量变量包括生砂压实度和含水量,因此生砂热特性存在很大的差异。评估了计算对生砂热物理性质不确定性的敏感性。

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